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Microdischarge using priming particles for reducing neon emission in AC plasma display panel with Ne-Xe-He gas mixture

  • Kim, Hyun (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Jang, Sang-Hun (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Tae, Heung-Sik (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Chien, Sung-Il (School of Electrical Engineering and Computer Science, Kyungpook National University) ;
  • Lee, Dong-Ho (School of Electrical Engineering and Computer Science, Kyungpook National University)
  • 발행 : 2006.07.30

초록

This study uses neon, xenon, and helium gas mixture microdischarge to determine the effects of priming particles on the neon emission characteristics in an alternate current plasma display panel (AC PDP). The infrared (823 nm) and neon emission (585 nm) intensities are measured and compared in the blue cells in the case of new discharge with priming particles or conventional discharge without priming particles, respectively. It is found that the priming particles can produce a plasma discharge effectively even under the weak electric field condition, thereby resulting in reducing the neon emission intensity remarkably without sacrificing the IR emission intensity. As a result, it is found that the Ne emission intensity is reduced by about 46.4 % but the blue visible emission intensity is increased by about 15.2 % when compared with the conventional discharge without priming particles.

키워드

참고문헌

  1. N. Uemura, Y. Yajima, Y. Kawanami, S. Ho, H. Nakahara, Y. Hatano, N. Kouchi, and Suzuki, 'Rib height dependence of vacuum ultraviolet emission efficiency in surface-discharge AC PDPs', IDW'99 Digest, pp. 595-598, Sendai, Japan, 1999
  2. A. Osawa, M. Ohsawa, M. Ishigaki, N. Yatsuda, and Takashi, 'Plasma display panel with optical filters', United States Patent, No. 5,892,492, 1999
  3. G Oversluizen, M. Klein, S. de Zwart, S. van Heusden, and T. Dekker, 'Improvement of the discharge efficiency in plasma displays', J. Appl. Phys., vol. 91, issue 4, pp. 2403-2408, 2002 https://doi.org/10.1063/1.1430896
  4. Y. Ikeda, J. P. Verboncoeur, P. J. Christenson, and C. K. Birdsall, 'Global modeling of a dielectric barrier discharge in Ne-Xe mixtures for an alternating current plasma display panel', J .Appl. Phys., vol. 86, issue 5, pp. 2431-2441,1999 https://doi.org/10.1063/1.371072
  5. W. L. Nighan, 'Basic kinetic processes in neon gas discharge displays', IEEE Trans. Electron Devices, vol. ED-28, issue 6, pp. 625-630, 1981
  6. A. Sobel, 'Gas-discharge displays: The state of the art', IEEE Trans. Electron Devices, vol. ED-24, issue 7, pp. 835-847, 1977
  7. M. Ishii, T. Shiga, K. Igarashi, and S. Mikoshiba, 'A study on a priming effect in AC-PDPs and its application to low voltage and high speed addressing', IEICE Trans. Electronics, vol. E84-C, issue 11, pp. 1673-1678, 2001
  8. H. Kim, S.-H. Jang, H.-S. Tae, and S.-I. Chien, 'Improvement of color gamut using new auxiliary negative pulse in AC-PDPs', Proc. SID 02 Digest, pp. 444-447, Boston, USA, 2002
  9. N. Uemura, Y. Yajima, Y. Kawanami, K. Suzuki, N. Kouchi, and Y. Hatano, 'Kinetic model of the VUV production in AC-PDPs as studied by time-resolved emission spectroscopy', IDW'00 Digest, pp. 639642, Kobe, Japan, 2000
  10. Y. Noguchi, A. Matsuoka, K. Uchino, and K. Muraoka, 'Direct measurement of electron density and temperature distribution in a micro-discharge plasma for a plasma display panel', J Appl. Phys., vol. 91, issue 2, pp. 613-616, 2002 https://doi.org/10.1063/1.1419264
  11. J. H. Seo, H. S. Jeong, J. Y. Lee, C. K. Yoon, J. K. Kim, and K.-W. Whang, 'Vacuum ultraviolet emission characteristics from He-Ne-Xe gas discharge in an alternating current plasma display panel cell', J. Appl. Phys., vol. 88, issue 3, pp. 1257-1262, 2000 https://doi.org/10.1063/1.373812
  12. B.-G. Cho and H.-S. Tae, 'New self-erasing discharge mode for improving luminous efficiency without reduction of sustain voltage margin in ACPDP', The iOth international Display Workshops (IDW'03), pp. 1069-1072, Fukuoka, Japan, 2003